Schrader Nils, Kim Eun Young, Winking Jan, Paulukat Jens, Schindelin Hermann, Schwarz Günter
Department of Plant Biology, Technical University Braunschweig, D-38023 Braunschweig, Germany.
J Biol Chem. 2004 Apr 30;279(18):18733-41. doi: 10.1074/jbc.M311245200. Epub 2004 Feb 19.
Gephyrin is an essential and instructive molecule for the formation of inhibitory synapses. Gephyrin binds directly to the large cytoplasmic loop located between transmembrane helices three and four of the beta-subunit of the glycine receptor and to microtubules, thus promoting glycine receptor (GlyR) anchoring to the cytoskeleton and clustering in the postsynaptic membrane. Besides its structural role, gephyrin is involved in the biosynthesis of the molybdenum cofactor that is essential for all molybdenum-dependent enzymes in mammals. Gephyrin can be divided into an N-terminal trimeric G domain and a C-terminal E domain, which are connected by a central linker region. Here we have studied the in vitro interaction of gephyrin and its domains with the large cytoplasmic loop of the GlyR beta-sub-unit (GlyRbeta-loop). Binding of gephyrin to the GlyR is exclusively mediated by the E domain, and the binding site was mapped to one of its sub-domains (residues 496-654). By using isothermal titration calorimetry, a high affinity (K(d) = 0.2-0.4 microm) and low affinity (K(d) = 11-30 microm) binding site for the GlyRbeta-loop was found on holo-gephyrin and the E domain, respectively, with a binding stoichiometry of two GlyRbeta-loops per E domain in both cases. Binding of the GlyRbeta-loop does not change the oligomeric state of either full-length gephyrin or the isolated E domain.
桥连蛋白是抑制性突触形成所必需的且具有指导作用的分子。桥连蛋白直接结合甘氨酸受体β亚基跨膜螺旋3和4之间的大细胞质环以及微管,从而促进甘氨酸受体(GlyR)锚定到细胞骨架并在突触后膜聚集。除了其结构作用外,桥连蛋白还参与钼辅因子的生物合成,而钼辅因子对哺乳动物中所有依赖钼的酶来说都是必不可少的。桥连蛋白可分为一个N端三聚体G结构域和一个C端E结构域,它们由一个中央连接区相连。在此,我们研究了桥连蛋白及其结构域与甘氨酸受体β亚基大细胞质环(GlyRβ环)的体外相互作用。桥连蛋白与甘氨酸受体的结合完全由E结构域介导,且结合位点被定位到其一个亚结构域(第496 - 654位残基)。通过等温滴定量热法,分别在完整桥连蛋白和E结构域上发现了对GlyRβ环具有高亲和力(K(d) = 0.2 - 0.4 μM)和低亲和力(K(d) = 11 - 30 μM)的结合位点,在两种情况下每个E结构域的结合化学计量均为两个GlyRβ环。GlyRβ环的结合不会改变全长桥连蛋白或分离的E结构域的寡聚状态。